Literature DB >> 26200785

The multiple and complex and changeable scenarios of the Trypanosoma cruzi transmission cycle in the sylvatic environment.

Ana Maria Jansen1, Samanta C C Xavier2, André Luiz R Roque3.   

Abstract

In this study, we report and discuss the results generated from over 20 years of studies of the Trypanosoma cruzi sylvatic transmission cycle. Our results have uncovered new aspects and reviewed old concepts on issues including reservoirs, true generalist species, association of mammalian species with distinct discrete typing units - DTUs, distribution of T. cruzi genotypes in the wild, mixed infections, and T. cruzi transmission ecology. Using parasitological and serological tests, we examined T. cruzi infection in 7,285 mammalian specimens from nine mammalian orders dispersed all over the Brazilian biomes. The obtained T. cruzi isolates were characterized by mini-exon gene sequence polymorphism and PCR RFLP to identify DTUs. Infection by T. cruzi was detected by serological methods in 20% of the examined animals and isolated from 41% of those infected, corresponding to 8% of all the examined mammals. Each mammal taxon responded uniquely to T. cruzi infection. Didelphis spp. are able to maintain high and long-lasting parasitemias (positive hemocultures) caused by TcI but maintain and rapidly control parasitemias caused by TcII to almost undetectable levels. In contrast, the tamarin species Leontopithecus rosalia and L. chrysomelas maintain long-lasting and high parasitemias caused by TcII similarly to Philander sp. The coati Nasua nasua maintains high parasitemias by both parental T. cruzi DTUs TcI or TcII and by TcII/TcIV (formerly Z3) at detectable levels. Wild and domestic canidae seem to display only a short period of reservoir competence. T. cruzi infection was demonstrated in the wild canid species Cerdocyon thous and Chrysocyon brachyurus, and positive hemoculture was obtained in one hyper carnivore species (Leopardus pardalis), demonstrating that T. cruzi transmission is deeply immersed in the trophic net. T. cruzi DTU distribution in nature did not exhibit any association with a particular biome or habitat. TcI predominates throughout (58% of the T. cruzi isolates); however, in spite of being significantly less frequent (17%), TcII is also widely distributed. Concomitant DTU infection occurred in 16% of infected mammals of all biomes and included arboreal and terrestrial species, as well as bats. TcI/TcII concomitant infection was the most common and widely dispersed, with mixed TcI/TcII infections especially common in coatis and in Didelphimorphia. The second most common pattern of concomitant infection was TcI/TcIV, observed in Chiroptera, Didelphimorphia and Primates. Taken together, our results demonstrate the complexity of T. cruzi reservoir system and its transmission strategies, indicating that there is considerably more to be learned regarding ecology of T. cruzi.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  DTU; Ecology of parasites; Reservoirs; Transmission cycles; Trypanosoma cruzi

Mesh:

Year:  2015        PMID: 26200785     DOI: 10.1016/j.actatropica.2015.07.018

Source DB:  PubMed          Journal:  Acta Trop        ISSN: 0001-706X            Impact factor:   3.112


  41 in total

1.  Biological and Molecular Characterization of Trypanosoma cruzi Strains from Four States of Brazil.

Authors:  Aline Rimoldi Ribeiro; Luciana Lima; Larissa Aguiar de Almeida; Joana Monteiro; Cláudia Jassica Gonçalves Moreno; Juliana Damieli Nascimento; Renato Freitas de Araújo; Fernanda Mello; Luciamáre Perinetti Alves Martins; Márcia Aparecida Silva Graminha; Marta Maria Geraldes Teixeira; Marcelo Sousa Silva; Mário Steindel; João Aristeu da Rosa
Journal:  Am J Trop Med Hyg       Date:  2018-01-04       Impact factor: 2.345

2.  Surveillance of Arboviruses in Primates and Sloths in the Atlantic Forest, Bahia, Brazil.

Authors:  L S Catenacci; M Ferreira; L C Martins; K M De Vleeschouwer; C R Cassano; L C Oliveira; G Canale; S L Deem; J S Tello; P Parker; P F C Vasconcelos; E S Travassos da Rosa
Journal:  Ecohealth       Date:  2018-08-16       Impact factor: 3.184

3.  Trypanosomatid species in Didelphis albiventris from urban forest fragments.

Authors:  Wesley Arruda Gimenes Nantes; Filipe Martins Santos; Gabriel Carvalho de Macedo; Wanessa Texeira Gomes Barreto; Luiz Ricardo Gonçalves; Marina Silva Rodrigues; Jenyfer Valesca Monteiro Chulli; Andreza Castro Rucco; William de Oliveira Assis; Grasiela Edith de Oliveira Porfírio; Carina Elisei de Oliveira; Samanta Cristina das Chagas Xavier; Heitor Miraglia Herrera; Ana Maria Jansen
Journal:  Parasitol Res       Date:  2020-10-20       Impact factor: 2.289

4.  Triatoma costalimai Naturally Infected by Trypanosoma cruzi: A Public Health Concern.

Authors:  Simone Caldas Teves; Helena Keiko Toma; Catarina Macedo Lopes; Bruna Lucia Nascimento de Oliveira; Ana Laura Carbajal-de-la-Fuente; Danielle Misael de Souza; Iza Alencar Sampaio de Oliveira; Jacenir Reis Dos Santos-Mallet; Teresa Cristina Monte Gonçalves
Journal:  Am J Trop Med Hyg       Date:  2019-01       Impact factor: 2.345

5.  Ecological multiplex interactions determine the role of species for parasite spread amplification.

Authors:  Massimo Stella; Sanja Selakovic; Alberto Antonioni; Cecilia S Andreazzi
Journal:  Elife       Date:  2018-04-23       Impact factor: 8.140

6.  Opportunities and challenges in chronic Chagas cardiomyopathy.

Authors:  George A Mensah; Kristin M Burns; Emmanuel K Peprah; Uchechukwu K A Sampson; Michael M Engelgau
Journal:  Glob Heart       Date:  2015-09

7.  The influence of abiotic and biotic variables on the patent parasitemias of Trypanosoma spp. in Thrichomys fosteri (Rodentia: Echimyidae) in the southern Pantanal.

Authors:  Filipe Martins Santos; Nayara Yoshie Sano; Sany Caroline Liberal; Wesley Arruda Gimenes Nantes; Isabel Passos Miranda Sanabria; Geovanna Silva Dos Santos; Artur Luiz Araujo Martinelli; Carina Elisei de Oliveira; Mauricio Almeida-Gomes; Ana Maria Jansen; Heitor Miraglia Herrera
Journal:  Parasitol Res       Date:  2022-04-18       Impact factor: 2.289

8.  Molecular characterization of Trypanosoma cruzi DTUs of the triatomine species in a Chagas disease endemic area.

Authors:  Tatiene Rossana Móta Silva; Thaynádia Gomes Rios; Carlos Alberto do Nascimento Ramos; Alessandra Scofield; Thiago Antonio Rodrigues Freire Lima; Leucio Câmara Alves; Rafael Antonio Nascimento Ramos; Gílcia Aparecida de Carvalho
Journal:  J Parasit Dis       Date:  2021-07-25

9.  Trypanosomatid Richness Among Rats, Opossums, and Dogs in the Caatinga Biome, Northeast Brazil, a Former Endemic Area of Chagas Disease.

Authors:  Maria Augusta Dario; Carolina Furtado; Cristiane Varella Lisboa; Felipe de Oliveira; Filipe Martins Santos; Paulo Sérgio D'Andrea; André Luiz Rodrigues Roque; Samanta Cristina das Chagas Xavier; Ana Maria Jansen
Journal:  Front Cell Infect Microbiol       Date:  2022-06-20       Impact factor: 6.073

10.  Identification of bat trypanosomes from Minas Gerais state, Brazil, based on 18S rDNA and Cathepsin-L-like targets.

Authors:  Elaine Cristina Bento; César Gómez-Hernández; Lara Rocha Batista; Laís Anversa; André Luiz Pedrosa; Eliane Lages-Silva; Juan David Ramírez; Luis Eduardo Ramirez
Journal:  Parasitol Res       Date:  2018-01-16       Impact factor: 2.289

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